IMAGE PROCESSING DEVICE, IMAGING APPARATUS, COMPUTER, IMAGE PROCESSING METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM
    1.
    发明申请
    IMAGE PROCESSING DEVICE, IMAGING APPARATUS, COMPUTER, IMAGE PROCESSING METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM 有权
    图像处理装置,成像装置,计算机,图像处理方法以及非可编程计算机可读介质

    公开(公告)号:US20150172614A1

    公开(公告)日:2015-06-18

    申请号:US14627233

    申请日:2015-02-20

    Abstract: An image enlargement processing portion 16 of the image processing device includes a data acquisition section 70 which judges whether or not photographing condition data is included in the image photographing data, and for acquiring content of the photographing condition data in a case where it is judged that the photographing condition data is included in the input image photographing data, and an enlargement process determination section 72 which determines a process parameter for an enlargement process for generating enlarged image data from the imaging data, in which the photographing condition data includes information regarding presence or absence of an optical low-pass filter during creation of the imaging data or information regarding an array of color filters of an imaging portion used to create the imaging data.

    Abstract translation: 图像处理装置的图像放大处理部分16包括数据获取部分70,其判断拍摄条件数据是否包括在图像拍摄数据中,并且在判断为拍摄条件数据的情况下获取拍摄条件数据的内容 摄影条件数据被包括在输入图像拍摄数据中,放大处理确定部分72确定用于从成像数据产生放大图像数据的放大处理的处理参数,其中拍摄条件数据包括关于存在的信息或 在创建成像数据期间不存在光学低通滤波器或关于用于创建成像数据的成像部分的滤色器阵列的信息。

    IMAGE PROCESSING DEVICE, IMAGE PICKUP DEVICE, COMPUTER, IMAGE PROCESSING METHOD AND NON TRANSITORY COMPUTER READABLE MEDIUM
    2.
    发明申请
    IMAGE PROCESSING DEVICE, IMAGE PICKUP DEVICE, COMPUTER, IMAGE PROCESSING METHOD AND NON TRANSITORY COMPUTER READABLE MEDIUM 有权
    图像处理装置,图像拾取装置,计算机,图像处理方法和非终端计算机可读介质

    公开(公告)号:US20150146049A1

    公开(公告)日:2015-05-28

    申请号:US14560586

    申请日:2014-12-04

    Abstract: An image reduction processing section 16 includes a data acquisition section 70 that acquires whether shooting condition data is included in image capture data (including image pickup data) 30 and contents of the shooting condition data, and reduction processing discrimination unit for discriminating at least any of whether reduction association processing (such as low-pass filter processing) associated with reduction processing of generating reduced image data from the image pickup data is executed, a processing parameter (such as a cutoff frequency of low-pass filter processing) of the reduction association processing, and a processing parameter (such as a reduction ratio) of the reduction processing, on the basis of an acquisition result of the shooting condition data. The shooting condition data includes information on the presence or absence of the optical low-pass filter and information on the array of the color filters.

    Abstract translation: 图像缩小处理部分16包括数据获取部分70,其获取拍摄条件数据是否包括在图像拍摄数据(包括图像拍摄数据)30中和拍摄条件数据的内容中,以及缩小处理识别单元,用于鉴别至少任何 是否执行与从摄像数据生成缩小图像数据的缩小处理相关联的缩小关联处理(例如低通滤波处理),缩小关联的处理参数(诸如低通滤波处理的截止频率) 处理以及缩小处理的处理参数(例如缩小比例),基于拍摄条件数据的获取结果。 拍摄条件数据包括关于光学低通滤波器的存在或不存在以及关于滤色器阵列的信息的信息。

    METHOD FOR CONTROLLING DISPLAY OF STEREOSCOPIC IMAGE, APPARATUS FOR CONTROLLING DISPLAY OF STEREOSCOPIC IMAGE, AND IMAGING APPARATUS
    3.
    发明申请
    METHOD FOR CONTROLLING DISPLAY OF STEREOSCOPIC IMAGE, APPARATUS FOR CONTROLLING DISPLAY OF STEREOSCOPIC IMAGE, AND IMAGING APPARATUS 有权
    用于控制立体图像显示的方法,用于控制立体图像显示的装置和成像装置

    公开(公告)号:US20140210962A1

    公开(公告)日:2014-07-31

    申请号:US14228797

    申请日:2014-03-28

    CPC classification number: H04N13/31 H04N13/128 H04N13/144 H04N13/398

    Abstract: An apparatus for controlling display of a stereoscopic image, includes: a display control portion which cuts out a stereoscopic image in a to-be-displayed area which is an area corresponding to a part of a stereoscopic image consisting of a plurality of images with a parallax, and displays the cut-out stereoscopic image on a display portion; a parallax change amount calculation portion which calculates a change amount between a parallax amount in a stereoscopic image within the to-be-displayed area before the to-be-displayed area is moved and a parallax amount in a stereoscopic image within the to-be-displayed area after the to-be-displayed area is moved by a first moving distance when an instruction to move the to-be-displayed area is issued; and a to-be-displayed area movement control portion which moves the to-be-displayed area by a moving distance in accordance with the change amount calculated by the parallax change amount calculation portion.

    Abstract translation: 一种用于控制立体图像显示的装置,包括:显示控制部分,其切出待显示区域中的立体图像,所述显示区域是与由多个图像组成的立体图像的一部分相对应的区域, 视差,并将切出的立体图像显示在显示部分上; 视差改变量计算部分,其计算待显示区域之前的待显示区域中的立体图像中的视差量与在待显示区域内的立体图像中的视差量之间的变化量 当发出要移动被显示区域的指令时,待显示区域之后的显示区域移动第一移动距离; 以及被显示区域移动控制部分,其根据由视差变化量计算部分计算出的变化量将待显示区域移动移动距离。

    IMAGE PICKUP DEVICE AND IMAGE PICKUP APPARATUS
    4.
    发明申请
    IMAGE PICKUP DEVICE AND IMAGE PICKUP APPARATUS 审中-公开
    图像拾取装置和图像拾取装置

    公开(公告)号:US20130222553A1

    公开(公告)日:2013-08-29

    申请号:US13846550

    申请日:2013-03-18

    Abstract: An image pickup device, comprising: a plurality of photoelectric conversion elements; a first microlens; and a second microlens, which is one microlens provided above n×n (n: 2 or more) of the photoelectric conversion elements laterally and longitudinally adjacent to each other, the second microlens pupil-dividing light entering the microlens for guiding to a light receiving surface of each of the n×n photoelectric conversion elements, the first microlens and the second microlens being provided in a mixed manner so that a two-dimensional image and a three-dimensional image can be respectively generated based on at least a first output signal corresponding to the first microlens and a second output signal corresponding to the second microlens, color filters of any of the colors being provided above the plurality of photoelectric conversion elements, and color filters of a same color being provided to the n×n photoelectric conversion elements corresponding to the second microlens.

    Abstract translation: 一种图像拾取装置,包括:多个光电转换元件; 第一个微透镜; 以及第二微透镜,其是在彼此横向和纵向相邻的光电转换元件的n×n(n:2或更多)上方提供的一个微透镜,第二微透镜光瞳分光灯进入微透镜以引导光接收 每个n×n个光电转换元件的表面,第一微透镜和第二微透镜以混合方式提供,使得可以基于至少第一输出信号分别产生二维图像和三维图像 对应于第一微透镜和对应于第二微透镜的第二输出信号,任意颜色的滤色器设置在多个光电转换元件上方,并且相同颜色的滤色器被提供给n×n个光电转换元件 对应于第二微透镜。

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